Abstract:
Various computer-implemented systems and methods are provided here for purposes of smart messaging. A machine learning application can obtain message context data from a user device, and process the message context data to determine a predicted conversation pattern of the conversation. The message context data is indicative of context of a conversation taking place during a messaging session. Based on the predicted conversation pattern, the machine learning application can then determine options for suggested responses that are predicted to compete at least part of a response message as part of the conversation. Each of the options for suggested responses corresponds to the message context data indicative of the context of the conversation. In response to selection of one of the suggested responses, that suggested response can be displayed within a message field.
Abstract:
Various computer-implemented systems and methods are provided here for purposes of intelligent predictive messaging. An exemplary system can be operated to obtain message context data associated with a messaging session, process the message context data to obtain suggested message content for the messaging session, and automatically populate a message field of a user device with at least some of the suggested message content. The system may proceed by sending a message from the user device, where the message includes content of the message field.
Abstract:
Methods and systems are provided for enabling access to a secure system from a remote system without directly logging into the secure system for debugging purposes. The secure system and the remote system may login to a host system with a session ID and establish a session. The secure system starts a Hyper Text Transport Protocol (HTTP) enabled debugger to enable debugging of the web browser traffic. The HTTP enabled debugger may be displayed on the remote system via the host system. The remote system may enter debug commands from a web browser on the remote system. The debug commands are then applied on the web browser of the secure system.
Abstract:
Various computer-implemented systems and methods are provided here for purposes of smart messaging. A machine learning application can obtain message context data from a user device, and process the message context data to determine a predicted conversation pattern of the conversation that is taking place between the particular users. The message context data is indicative of context of a conversation taking place between particular users during a messaging session. Based on the predicted conversation pattern, the machine learning application can then determine options for suggested responses that are predicted to compete at least part of a response message as part of the conversation. Each of the options for suggested responses corresponds to the message context data indicative of the context of the conversation. In response to selection of one of the suggested responses, that suggested response can be displayed within a message field.
Abstract:
A system and related operating methods that achieve shared screen verification are presented here. One operating method begins by establishing a desktop sharing session between a publisher device and a viewer device, during which the publisher device renders a publisher display and the viewer device renders a viewer display that corresponds to the publisher display. The method continues by capturing first framebuffer data for a frame of the publisher display, capturing second framebuffer data for the corresponding frame of the viewer display. The method processes the first framebuffer data and/or the second framebuffer data to obtain processed framebuffer data having a consistent display resolution. Thereafter, the method compares the processed second framebuffer data to the processed first framebuffer data to obtain a measure of quality.
Abstract:
A system and related operating methods that achieve shared screen verification are presented here. One operating method begins by establishing a desktop sharing session between a publisher device and a viewer device, during which the publisher device renders a publisher display and the viewer device renders a viewer display that corresponds to the publisher display. The method continues by capturing first framebuffer data for a frame of the publisher display, capturing second framebuffer data for the corresponding frame of the viewer display. The method processes the first framebuffer data and/or the second framebuffer data to obtain processed framebuffer data having a consistent display resolution. Thereafter, the method compares the processed second framebuffer data to the processed first framebuffer data to obtain a measure of quality.
Abstract:
A system and related operating methods that achieve shared screen verification are presented here. One operating method begins by establishing a desktop sharing session between a publisher device and a viewer device, during which the publisher device renders a publisher display and the viewer device renders a viewer display that corresponds to the publisher display. The method continues by capturing first framebuffer data for a frame of the publisher display, capturing second framebuffer data for the corresponding frame of the viewer display. The method processes the first framebuffer data and/or the second framebuffer data to obtain processed framebuffer data having a consistent display resolution. Thereafter, the method compares the processed second framebuffer data to the processed first framebuffer data to obtain a measure of quality.
Abstract:
Various computer-implemented systems and methods are provided here for purposes of intelligent predictive messaging. An exemplary system can be operated to obtain message context data associated with a messaging session, process the message context data to obtain suggested message content for the messaging session, and automatically populate a message field of a user device with at least some of the suggested message content. The system may proceed by sending a message from the user device, where the message includes content of the message field.